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Cutting force prediction in micro orthogonal cutting by an analytical-numerical coupled model

机译:分析 - 数值耦合模型中微正交切割中的切割力预测

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The slip-line field model developed by Waldorf [1] for the macroscale is suitable to predict cutting forces when a large ploughing action occurs, as in micromachining, since it takes into account a rounded-edge tool. The present study considers the procedure that was developed in a past work of the same authors [2] to adjust the slip-line model for a specific target material by means of a restricted set of experiments. The aim of this paper is to improve this procedure by coupling analytical and numerical modeling and to make the calibration phase independent from cutting experiments. The prediction performance of the analytical-numerical coupled model is evaluated by an objective comparison between the predicted cutting and thrust forces and the forces acquired in the experimental campaign carried out on C38500 brass (CuZn39Pb3).
机译:WALDORF [1]开发的SLIN-LINE场模型对于宏观方式适用于预测当发生大犁动作时的切割力,因为它考虑了圆形工具。本研究考虑了在同一作者的过去的工作中开发的程序[2]以通过限制的实验组调整特定目标材料的滑线模型。本文的目的是通过耦合分析和数值建模并使校准相自由地改善该程序,并使校准相免于切割实验。通过预测的切割和推力之间的目标比较和在C38500黄铜(CUZN39PB3)上进行的实验活动中获得的电力之间的目标比较来评估分析数值耦合模型的预测性能。

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